WO2015062098A1 - Procédé de sélection de réseau et dispositif de réseau central - Google Patents
Procédé de sélection de réseau et dispositif de réseau central Download PDFInfo
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- WO2015062098A1 WO2015062098A1 PCT/CN2013/086470 CN2013086470W WO2015062098A1 WO 2015062098 A1 WO2015062098 A1 WO 2015062098A1 CN 2013086470 W CN2013086470 W CN 2013086470W WO 2015062098 A1 WO2015062098 A1 WO 2015062098A1
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- Prior art keywords
- core network
- network device
- dedicated
- access
- specific
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Ceased
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Classifications
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W48/00—Access restriction; Network selection; Access point selection
- H04W48/08—Access restriction or access information delivery, e.g. discovery data delivery
- H04W48/14—Access restriction or access information delivery, e.g. discovery data delivery using user query or user detection
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W48/00—Access restriction; Network selection; Access point selection
- H04W48/18—Selecting a network or a communication service
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W4/00—Services specially adapted for wireless communication networks; Facilities therefor
- H04W4/70—Services for machine-to-machine communication [M2M] or machine type communication [MTC]
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W60/00—Affiliation to network, e.g. registration; Terminating affiliation with the network, e.g. de-registration
- H04W60/06—De-registration or detaching
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- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W8/00—Network data management
- H04W8/02—Processing of mobility data, e.g. registration information at HLR [Home Location Register] or VLR [Visitor Location Register]; Transfer of mobility data, e.g. between HLR, VLR or external networks
- H04W8/06—Registration at serving network Location Register, VLR or user mobility server
-
- H—ELECTRICITY
- H04—ELECTRIC COMMUNICATION TECHNIQUE
- H04W—WIRELESS COMMUNICATION NETWORKS
- H04W8/00—Network data management
- H04W8/02—Processing of mobility data, e.g. registration information at HLR [Home Location Register] or VLR [Visitor Location Register]; Transfer of mobility data, e.g. between HLR, VLR or external networks
- H04W8/08—Mobility data transfer
Definitions
- the present invention relates to the field of communications technologies, and in particular, to a network selection method and a core network device. Background technique
- the network share can be shared by the wireless side or shared by the core network side.
- Network sharing not only provides a low-cost operation mode for traditional operators entering new areas, but also provides other vertical industry vendors, or some large enterprises, groups, VIP (important people) users to use the existing network to meet special The possibility of demand or new business.
- VIP important people
- a large M2M (machine to machine) vendor wants to share the wireless side of an existing cellular network, but uses its own dedicated core network equipment to operate its own services.
- VIP customers want to build a separate core network to meet their high-quality communications needs.
- MVNO virtual network operator
- the terminal user initiates an attach request to the network
- the RAN (Residential Access Network) side is based on a random number or according to various MMEs in the MME (Mobility Management Entity) pool.
- the weighting factor is chosen to select the access.
- the user's dedicated UI should be ⁇ 2, but according to the existing selection algorithm, the eNodeB (evolved base station) may select MME1 because the configuration is not Yueliang.
- MME1 may refuse the attachment of the user terminal, causing the user to fail to access, which seriously affects the user's service.
- the embodiment of the invention provides a network selection method and a core network device, which are used to solve the technical problem that the user terminal fails to access due to a selection error when selecting a core network device for the user terminal in the prior art.
- a first aspect of the present invention provides a network selection method, including:
- the first core network device sends information of the dedicated second core network device serving the UE to the UE in a temporary identifier of the UE.
- the first core network device is a mobility management entity MME, or the first core network device is a serving general packet radio service technical support node SGSN, or The first core network device is a mobile services switching center MSC/visit location register VLR.
- the UE is a UE configured to require a dedicated network service, or a specific type of UE, or a UE with specific subscription data.
- the specific type of UE is a machine-to-machine communication MTC UE or a low-priority UE.
- the specific subscription data refers to the subscription data of the specific access point APN, or the data of the network type including the serving UE, or the signing indication
- the UE needs data of a specific network service, or subscribes to data including a core network element type serving the UE.
- the first core network device The information of the dedicated second core network device of the private network of the UE is sent to the UE in the temporary identifier of the UE, including: the first core network device, the temporary identifier of the UE, and the non-broadcast location
- the area identifier is sent to the UE in an access accept message, or the first core network device includes the temporary identifier of the UE and a periodic location area update timer value in the access accept message.
- the first core network device service After the information of the dedicated second core network device of the private network of the UE is sent to the UE in the temporary identifier of the UE, the method further includes: the first core network device sending a disconnect request to the UE, where The re-attachment cause value is included in the separation request.
- the information of the dedicated second core network device And being: a group identifier of the dedicated second core network device, or an encoding of the dedicated second core network device, or a network resource identifier NRI of the dedicated second core network device.
- a second aspect of the present invention a core network device, comprising:
- a receiving module configured to receive an access request message sent by the UE
- an operation module configured to send information of the dedicated second core network device serving the private network of the UE to the UE in a temporary identifier of the UE.
- the core network device is an MME, or the core network device is an SGSN, or the core network device is an MSC/VLR.
- the UE is a UE configured to require a dedicated network service, or a specific type of UE, or a UE with specific subscription data.
- the specific type of UE is an MTC UE or a low priority UE.
- the specific subscription data refers to the subscription data of the specific access point APN, or the data of the network type including the serving UE, or the signing indication
- the UE needs data for a specific network service, or the contract includes services.
- the operation module is specifically configured to: The temporary identifier of the UE and the non-broadcast location area identifier are included in the access accept message and sent to The UE, or the temporary identifier of the UE and the periodic location area update timer value are included in the access accept message and sent to the UE.
- the operation module is further configured to: The UE sends a disconnect request, and the split request includes a re-attachment cause value.
- the information of the dedicated second core network device And being: a group identifier of the dedicated second core network device, or an encoding of the dedicated second core network device, or an NRI of the dedicated second core network device.
- a third aspect of the present invention provides a core network device, including:
- a memory for storing instructions
- An interface configured to receive an access request message sent by the UE, and send the temporary identifier of the UE to the UE;
- the processor the instructions are executed to include information of a dedicated second core network device serving a private network of the UE in a temporary identity of the UE.
- the core network device is an MME, or the core network device is an SGSN, or the core network device is an MSC/VLR.
- the UE is a UE configured to require a dedicated network service, or a specific type of UE, or a UE with specific subscription data.
- the specific type of UE is an MTC UE or a low priority UE.
- the specific subscription data refers to the subscription data of the specific access point APN, or the data of the network type including the serving UE, or the signing indication
- the UE needs data of a specific network service, or subscribes to data including a core network element type serving the UE.
- the processor is specifically configured to: execute the instruction to include the temporary identifier of the UE and the non-broadcast location area identifier in an access accept message Or executing the instruction to include the temporary identifier of the UE and a periodic location area update timer value in the access accept message;
- the interface is specifically configured to: send the access accept message to the UE.
- the interface is further configured to: The UE sends a detach request, and the detach request includes a re-attachment cause value.
- the information of the dedicated second core network device And being: a group identifier of the dedicated second core network device, or an encoding of the dedicated second core network device, or an NRI of the dedicated second core network device.
- the first core network device may include the information of the dedicated second core network device of the private network in the temporary identifier of the UE.
- the UE is sent to the UE, so that even if the first core network device is not a core network device that specifically serves the UE, the UE can have the correct core network device service when accessing the network for the next time.
- FIG. 1 is a schematic diagram of a method for selecting an MME in the prior art
- FIG. 2 is a main flowchart of a network selection method according to an embodiment of the present invention.
- FIG. 3 is a main flowchart of a network selection method when a first core network device is an MME according to an embodiment of the present invention
- FIG. 4 is a main flowchart of a network selection method when a first core network device is an SGSN according to an embodiment of the present invention
- FIG. 5 is a schematic diagram of interaction of a network selection method according to an embodiment of the present invention.
- FIG. 6 is a structural diagram of a first core network device according to an embodiment of the present invention
- FIG. 7 is a schematic diagram of a first core network device according to an embodiment of the present invention. detailed description
- An embodiment of the present invention provides a network selection method, where the method may include: receiving, by a first core network device, an access request message sent by a user equipment UE; where the first core network device is to serve the UE in a private network.
- the information of the dedicated second core network device is sent to the UE in a temporary identity of the UE.
- the first core network device may include information about the dedicated second core network device of the private network in the UE.
- the temporary identifier is sent to the UE, so that even if the first core network device is not a core network device that specifically serves the UE, the UE can have the correct core network device service when accessing the network for the next time.
- the techniques described herein can be used in a variety of communication systems, such as current 2G (second generation mobile communication technology), 3G (third generation mobile communication technology) communication systems, and next generation communication systems, such as the Global System for Mobile Communications (GSM, Global) System for Mobile communications ), Code Division Multiple Access (CDMA), Time Division Multiple Access (TDMA), Wideband Code Division Multiple Access (WCDMA), Frequency Division Multiple Access (WCDMA) FDMA (Frequency Division Multiple Addressing) system, Orthogonal Frequency-Division Multiple Access (OFDMA) system, single carrier FDMA (SC-FDMA) system, general packet radio service (GPRS, General Packet) Radio Service) systems, Long Term Evolution (LTE) systems, and other such communication systems.
- GSM Global System for Mobile Communications
- CDMA Code Division Multiple Access
- TDMA Time Division Multiple Access
- WCDMA Wideband Code Division Multiple Access
- WCDMA Frequency Division Multiple Access
- OFDMA Frequency Division Multiple Access
- OFDMA Orthogonal Freque
- the user equipment which may be a wireless terminal or a wired terminal, may be a device that provides voice and/or data connectivity to the user, a handheld device with wireless connectivity, or other processing device connected to the wireless modem.
- the wireless terminal can communicate with one or more core networks via a radio access network (eg, RAN, Radio Access Network), which can be a mobile terminal, such as a mobile phone (or "cellular" phone) and with a mobile terminal
- RAN Radio Access Network
- the computers for example, can be portable, pocket-sized, handheld, computer-integrated or in-vehicle mobile devices that exchange language and/or data with the wireless access network.
- a wireless terminal may also be called a system, a Subscriber Unit, a Subscriber Station, a Mobile Station, a Mobile, a Remote Station, an Access Point, Remote Terminal, Access Terminal, User Terminal, User Agent, User Device, or User Equipment.
- the core network device may be, for example, an MME (Mobility Management Entity), or may be an SGSN (Serving General Packet Radio Service Support Node;).
- MME Mobility Management Entity
- SGSN Serving General Packet Radio Service Support Node
- the private network in all embodiments of the present invention means that the operator may deploy multiple core networks, each of which is dedicated (specific) or specific service-specific type UE, such as an MTC core network, which exclusively serves the MTC UE.
- a core network is referred to as a dedicated core network in the present invention, as compared to a service provider's network.
- the dedicated core network includes the MME and/or the SGSN serving a certain type of UE.
- Other core network devices may also be included: gateway devices, such as GGSN (Gateway GPRS Support Node), SGW (Serving Gateway), PGW (Packet Data Network Gateway), and the like.
- the MME and/or the SGSN may be one or more, and the MMEs and/or SGSNs may form a pool or cover different areas.
- the invention is not limited.
- the core network devices in the private network, the MME, the SGSN, the GGSN, the SGW, and the PGW are collectively referred to as a dedicated core network device in the present invention, that is, a core network device dedicated to the UE.
- a dedicated network or a dedicated core network device, can serve the UE, but does not restrict the private network or the dedicated core network device from serving other types of UEs, that is, can also serve other types of UEs.
- the invention is not limited.
- the access network device may be, for example, a base station, or may be an RNC (Radio Network Controller), or may be a BSC (Base Station Controller), or may be an eNodeB (evolved NodeB, evolved). Base station), or it may be a relay device, or it may be another network side device.
- a base station e.g., an access point
- the base station can refer to a device in an access network that communicates with a wireless terminal over one or more sectors over an air interface.
- the base station can be used to convert the received air frame to the IP packet as a router between the wireless terminal and the rest of the access network, wherein the remainder of the access network can include an Internet Protocol (IP) network.
- IP Internet Protocol
- the base station can also coordinate attribute management of the air interface.
- the base station may be a Base Transceiver Station (BTS) in GSM or CDMA, or may be a base station (NodeB) in WCDMA, or may be an evolved Node B (e-NodeB) in LTE.
- BTS Base Transceiver Station
- NodeB base station
- e-NodeB evolved Node B
- system and “network” are used interchangeably herein.
- the term “and/or” in this context is merely an association that describes the associated object, indicating that there can be three relationships, for example, A and / or B, which can mean: A exists separately, and both A and B exist, exist alone B these three situations.
- the character "/" in this article generally means that the contextual object is an "or" relationship.
- an embodiment of the present invention provides a network selection method, and the main processes of the method are as follows:
- Step 201 The first core network device receives an access request message sent by the user equipment UE.
- the first core network device is, for example, an MME, and the temporary identifier of the UE is, for example, a GUTI; or the first core network device is, for example, an SGSN, and the temporary identifier of the UE
- the P-TMSI is used, or the first core network device is an MSC (Mobile Switching Center) / VLR (Visitor Location Register), and the temporary identifier of the UE is TMSI.
- the first core network device does not belong to a proprietary network serving a specific type of UE, and cannot serve a specific type of UE.
- the UE is a UE configured to require a dedicated network service, or a UE of a specific type, or a UE with specific subscription data.
- the specific type of UE is an MTC UE or a low priority UE.
- the specific subscription data refers to the subscription data of the specific APN, or the subscription data includes data of the network type of the serving UE, or the subscription data indicates that the UE needs data of a specific network service, or The subscription data includes data of the core network element type serving the UE,
- Step 202 The first core network device sends the information of the dedicated second core network device that serves the UE to the UE in the temporary identifier of the UE.
- the first core network device sends the information of the dedicated second core network device that serves the UE to the UE in the temporary identifier of the UE, and includes: A core network device includes the temporary identifier of the UE and the non-broadcast location area identifier in an access accept message and sent to the UE, or the first core network device uses the temporary identifier and periodicity of the UE.
- the location area update timer value is sent to the UE in the access accept message.
- the periodic location area update includes, but is not limited to, a periodic tracking area update, or a periodic routing area update.
- the periodic location area update timer value includes, but is not limited to, a periodic tracking area update timer value, or a periodic routing area update timer value.
- the location area identifier may be TAI, or RAI.
- the first core network device sends the information of the dedicated second core network device serving the private network of the UE to the temporary identifier of the UE.
- the method further includes: sending, by the first core network device, a disconnect request to the UE, where the split request includes a re-attachment cause value.
- the information of the dedicated second core network device is: a group ID of the dedicated second core network device, or an encoding of the dedicated second core network device (MMEC) Or, an NRI (Network Resource Identifier) of the dedicated second core network device.
- MMEC dedicated second core network device
- NRI Network Resource Identifier
- the following respectively describes different embodiments, and the second embodiment.
- an embodiment of the present invention provides a network selection method, and the main processes of the method are as follows:
- Step 301 The first core network device receives an access request message sent by the UE.
- the first core network device may be, for example, an MME in a core network, which may be referred to as a first MME.
- the first MME may receive the access request message sent by the UE. Specifically, the first MME may obtain the access request message by using an access network device. That is, the UE may first send the access request message to the access network device, and the access network device sends the access request message to the first MME.
- the access network device may be an eNodeB.
- the access request message in the embodiment of the present invention may be an attach request, or may be a combined attach request, or may be a TAU request (Tracking area Update request) Zone update request), or it can be a combined TAU request and so on.
- an attach request or may be a combined attach request, or may be a TAU request (Tracking area Update request) Zone update request), or it can be a combined TAU request and so on.
- TAU request Tracking area Update request
- Zone update request a combined TAU request and so on.
- the first core network device is not a dedicated core network that serves the UE.
- the UE refers to a UE that needs to configure a certain dedicated network service; or the UE refers to a specific type of UE, and the specific type may include, but is not limited to, MTC (Machine Type Communication) Communication) UE, low priority UE; or the UE refers to a UE with specific subscription data, and the specific subscription data refers to a specific APN included in the subscription data.
- MTC Machine Type Communication
- the subscription data includes the network type of the serving UE, including but not limited to the MTC network, or includes data of the core network element type of the serving UE, including but not limited to the MTC.
- the core network element, or signing data indicating that the UE needs a specific network service.
- the subscription data of the UE in the present invention refers to the IMSI of the UE.
- HSS Home Subscriber Server
- Step 302 The first core network device sends the information of the dedicated second core network device serving the private network of the UE to the UE in the GUTI of the UE.
- the access request message is equivalent to a trigger condition, and after receiving the access request message of the UE, the first core network device determines that the access request message is from the UE.
- the method for determining that a UE is the UE includes determining whether the UE is a specific type of UE, such as a low priority UE, according to the UE's subscription or the information that the UE includes in the access request message.
- the private network takes an APN as an example, for example, an APN (Access Point Name) of an MTC.
- APN Access Point Name
- the subscription data has parameters indicating the network type of the serving UE, or indicating that the UE needs a dedicated network service.
- the IMSI of the UE determines in the list that the UE is the UE.
- the temporary identifier of the UE is a GUTI (Global Unique Temporory Identifier)
- the information of the dedicated second core network device may be a group ID, where the group ID may be, for example, an MNC. (Mobile Network Code, mobile network number) + MCC + MME Group ID, or just the MME group ID is filled in the MME group ID field of the GUTI.
- the information of the device may also be an MMEC (MME code, MME code). Code), or a combination of group ID and MMEC.
- the dedicated second core network device is the MME group ID and/or the MMEC
- the dedicated second core network device is not limited to be the MME, and the dedicated second core network device is also It can be an SGSN.
- the group ID or MMEC is used to select a proprietary MME.
- the MMEC When the UE is from GERAN (Global System for Mobile Communications Enhanced Data Rate for GSM Evolution Radio Access Network, Global System for Mobile Communications/Enhanced Data Rate Evolution Technology Radio Access Network)/UTRAN Universal Mobile Telecommunications System Terrestrial Radio Access Network)
- GERAN Global System for Mobile Communications Enhanced Data Rate for GSM Evolution Radio Access Network, Global System for Mobile Communications/Enhanced Data Rate Evolution Technology Radio Access Network
- UTRAN Universal Mobile Telecommunications System Terrestrial Radio Access Network When accessing, the MMEC is mapped to the N-RI in the P-TMS Packet Temperate Mobile Subs cription Identity, and can also be used to identify the proprietary SGSN.
- the dedicated MME is configured with a special group ID, or MMEC, and sends the group ID of the associated configuration, MMEC, to the eNodeB interconnected with it.
- the UE sends the access request message again, the information of the dedicated second core network device included in the GUTI is sent to the eNodeB, and the eNodeB routes the request of the UE to the dedicated MME.
- the access accept message may be attach accept, or may be combined attach accept, or may be TAU accept, or may be combined TAU accept (The joint tracking area accepts, and the access accept message differs depending on the access request message.
- the first core network device may be that the GUTI is included in the access accept message, and is sent to the UE by using the access network device, where specifically:
- the first core network device includes the GUTI and the non-broadcast TAI in the access accept message, and sends the UE to the UE through the access network device, or updates the GUTI and the periodic location area.
- the value of the device is included in the access accept message and sent to the UE.
- the timing of the periodic location area update timer value is sufficiently short. For example, the timing time of the periodic location area update timer value is less than a duration threshold. Or send the GUTI, the non-broadcast TAI, and the sufficiently short periodic location area update timer value to the UE.
- an embodiment of the present invention provides a network selection method, and the main processes of the method are as follows:
- Step 401 The first core network device receives an access request message sent by the UE.
- the first core network device may be, for example, an SGSN in the core network, which may be referred to as a first SGSN.
- the first SGSN may receive the access request message sent by the UE. Specifically, the first SGSN may acquire the access request message by using an access network device. That is, the UE may first send the access request message to the access network device, and the access network device sends the access request message to the first SGSN.
- the access network device can be an RNC or a BSC.
- the access request message in the embodiment of the present invention may be an attach request, or may be a combined attach request, or may be a RAU request (routing area update request) Update request), or it can be a combined RAU request, and so on.
- the first core network device is not a dedicated core network that serves the UE.
- Step 402 The first core network device sends information of the dedicated second core network device in the private network serving the UE to the UE in the P-TMSI.
- the access request message is equivalent to a trigger condition, and after receiving the access request message of the UE, the first core network device determines that the access request message is from the UE.
- the method for determining whether a UE is the UE is as shown in the second embodiment, and details are not described in this embodiment.
- the dedicated network operator also configures a special NRI for the dedicated SGSN.
- the correspondence between the NRI and the SGSN is configured on the RNC and/or BSC interconnected with the SGSN.
- the temporary identifier of the UE is a P-TMSI (Packet Temporary Mobile Subscriber Identity), and the information of the dedicated second core network device is an NRI.
- P-TMSI Packet Temporary Mobile Subscriber Identity
- NRI Packet Temporary Mobile Subscriber Identity
- the NRI is mapped to the MMEC and is provided to the eNodeB, and the eNodeB routes the request message to the corresponding MME according to the MMEC.
- the NRI is sent to the BSC in the TLLI (Temporary Logical Link Identifier), and the BSC routes the access request of the UE to the corresponding SGSN according to the NRI.
- TLLI Temporal Logical Link Identifier
- the RNC When the UE accesses from the UTRAN, the RNC acquires an NRI from an IDNNS (Intra Domain (Non Access Stratum Node Selector) provided by the UE, and routes the access request of the UE. Go to the corresponding SGSN.
- IDNNS Intra Domain (Non Access Stratum Node Selector)
- the first core network device determines information about the dedicated second core network device that serves the UE.
- the dedicated second core network device belongs to the private network.
- the dedicated network may include only the dedicated second core network device, or may also include multiple core network devices. If a plurality of core network devices are available, the first core network device may select a core network device according to the configured algorithm, and send the information of the selected core network device to the temporary identifier of the UE to send to the Said UE.
- the temporary identifier of the UE is one of a TLLI, a P-TMSI, and a GUTI, which is determined by a specific situation, and specifically: when the UE accesses the GERAN, the temporary identifier of the UE may be The P-TMSI may also be a TLLI; when accessing from the UTRAN, the temporary identifier of the UE is P-TMSI; when accessing from LTE, the temporary identifier of the UE is GUTI.
- the first core network device may initiate an authentication process, and serve the first core network device.
- the contract data of the UE is obtained at the HSS.
- the access accept message may be attach accept, or may be combined attach accept, or may be RAU accept, or It may be combined RAU accept, etc., and the access accept message differs depending on the access request message.
- the P-TMSI is included in the access accept message and sent to the UE, and specifically, the P-TMSI and the non-broadcast RAI are included in the The access accept message is sent to the UE, or the P-TMSI and the periodic location area update timer value are included in the access accept message, and sent to the UE.
- the timing of the periodic location area update timer value is sufficiently short.
- the timing time of the periodic location area update timer value is less than a duration threshold.
- the method may further include: sending a disconnect request to the UE And the detach request includes a re-attachment cause value, so that the UE re-attaches to the dedicated second core network device according to the information of the dedicated second core network device.
- the first core network device is not a core network device that serves the UE, and the dedicated second core network device is a core network device that can serve the UE, the After the first core network device sends the temporary identifier of the UE to the UE, the detach request may be sent to the UE, so that after receiving the separation request, the UE may The first core network device is separated from each other, and is re-attached to the dedicated second core network device according to the information of the dedicated second core network device, that is, attached to the core network device to which the UE belongs, to complete normal communication operations.
- the UE may initiate a re-attach request by using the access network device, where the re-attach request may include information of the dedicated second core network device, After receiving the information of the dedicated second core network device, the access network device may select the dedicated second core network device according to the information of the dedicated second core network device, and send the re-attach request to the Dedicated second core network device.
- the dedicated second core network device may parse the temporary identifier of the UE included in the re-attach request, and locate the device according to the temporary identifier of the UE. Body UE. If the positioning is successful, the dedicated second core network device may send an attach accept message to the UE through the access network device, so that the UE successfully attaches to the dedicated second core network device.
- the dedicated second core network device parses the temporary identity of the UE, the following two situations occur:
- the temporary identifier of the UE conflicts with the temporary identifier parsed by the dedicated second core network device
- the dedicated second core network device cannot find the context of the UE according to the temporary identifier of the UE.
- the dedicated second core network device can determine that authentication needs to be re-established.
- the dedicated second core network device may initiate an identity request to the UE, and after receiving the identity request, the UE may reply to the dedicated second core network device with identity request response information, the identity request.
- the IMSI of the UE may be included in the response information.
- the dedicated second core network device may initiate a location update process to the HSS, and the HSS may reply to the dedicated second core network device for a location update response, so that the dedicated The second core network device may reply to the UE with an attach accept message, and the UE successfully accesses the dedicated second core network device.
- the access network device detects the information corresponding to the information of the dedicated second core network device that is sent by the UE.
- the dedicated second core network device is in the process of user migration, that is, the information of the dedicated second core network device in the access network device indicates that the current state of the dedicated second core network device is not accessible, and
- the access network device instructs the UE to select other core network devices in the private network for access.
- the access network device may send information about the available core network devices in the private network to the UE for selection by the UE, and after selecting, the UE may select according to the selected core.
- the information of the network device re-initiates an access request process through the access network device.
- the first core network device is an MME
- the access network device is an eNodeB
- the first home subscriber subscription server in FIG. 5 corresponds to the first core network device
- the second home subscriber subscription server corresponds to the dedicated second core network device.
- the UE sends the access request message to the first core network device by using the access network device, where the access request message is, for example, an attach request, and the attach request message may include There is an IMSI of the UE. If the IMSI of the UE is not included in the attach request message, including the GUTI of the UE, the first core network device may acquire the old SGSN (source SGSN) or the MME serving the UE by using a GUTI to obtain the The IMSI of the UE.
- the access request message is, for example, an attach request
- the attach request message may include There is an IMSI of the UE. If the IMSI of the UE is not included in the attach request message, including the GUTI of the UE, the first core network device may acquire the old SGSN (source SGSN) or the MME serving the UE by using a GUTI to obtain the The IMSI of the UE.
- the first core network device side does not store the subscription data of the UE, and the first core network device initiates an authentication process, that is, requests the first home server to obtain the subscription data of the UE.
- the first core network device may select, according to the private network to which the UE belongs, the corresponding UE. SGW and PGW, and initiate a session establishment request to the selected SGW and PGW.
- the SGW and the PGW may send a corresponding response message to the first core network device.
- the first core network device may send an access accept message to the access network device.
- the access accept message is an attach accept message.
- the first core network device can establish an initial user context for the UE.
- the attach accept message includes a temporary identifier of the UE, and the temporary identifier of the UE includes information of the dedicated second core network device.
- the temporary identifier of the UE in the embodiment of the present invention is exemplified by the GUTI, and the information of the dedicated second core network device is included in the GUTI, for example, the group ID or the MMEC.
- the attach accept message may further include a non-broadcast TAI, and/or a short enough periodic location area update timer value.
- the UE saves the non-broadcast TAI and/or periodic location area update timer value.
- the UE reads The TAI in the broadcast is different from the locally saved TAI, or the periodic location area update timer value expires; the UE initiates a tracking area update request or a periodic tracking area update request, and sends the request to the MME through the eNodeB, and simultaneously, the UE
- the information of the dedicated second core network device is also sent to the eNodeB, and the eNodeB sends a (periodic) tracking area update request to the corresponding MME.
- the J ⁇ J eNodeB routes the request message to the MME. . If the group ID of multiple MMEs is the same as the group ID provided by the UE, the eNodeB may select an MME according to a certain algorithm, such as load balancing, and route the message to the MME.
- the eNodeB routes the message to the MME having the same MMEC as the dedicated second core network device.
- the access network device may send an RRC (Radio Resource Control) connection reconfiguration message to the UE, where the RRC connection reconfiguration message may include an EPS Radio Bearer ID (Evolved Packet System Radio Bearer Identity) information. And attach accept messages.
- the UE receives the attach accept message, the TIN (temporary identifier of the UE) may be set to the GUTI, and an RRC reconfiguration complete message is returned to the access network device.
- the access network device may initiate an initial context setup response message to the first core network device, and the UE sends an attach accept complete message to the first core network device by using the access network device.
- the first core network device may send an update request to the initiation, and the SGW and the PGW may go to the first The core network device replies with a bearer update response.
- the first core network device further needs to initiate a detach request to the UE by using the access network device, where the detach request includes a re-attachment cause value.
- the UE sends a re-attach request to the dedicated second core network device by using the access network device, and the UE provides information of the dedicated second core network device to an access network element, so that the access network
- the device can route the reattach request according to the information of the dedicated second core network device To the dedicated second core network device.
- the temporary identifier of the UE is exemplified by the GUTI
- the information of the dedicated second core network device is exemplified by the MMEC
- the access network element is described by using the eNodeB as an example.
- the dedicated second core network device After receiving the re-attach request, the dedicated second core network device parses the GUTI included therein, and locates the UE according to the GUTI. In Figure 5, for example, one of the following two situations occurs:
- the dedicated second core network device cannot find the context of the UE according to the GUTI.
- the dedicated second core network device determines that the integrity protection check of the reattach request does not pass, and needs to be re-authenticated.
- the dedicated second core network device sends an identity request to the UE, and the UE returns identity request response information to the dedicated second core network device, where the identity request response information includes the IMSI of the UE.
- the dedicated second core network device initiates a location update procedure to the second home subscriber subscription server, and the second home subscriber subscription server returns a location update response to the dedicated second core network device, where the dedicated The second core network device replies to the UE with an attach accept response, so that the UE successfully attaches to the dedicated second core network device.
- the first core network device may also be an MSC/VLR.
- the MSC/VLR accepts a location area update (LAU Location area Update) request message, and the temporary identifier of the UE sent to the UE is TMSI, and the TMSI may include the identifier of the dedicated second core network device. NRI, the MSC/VLR may send the TMSI to the UE in a location area update accept message.
- LAU Location area Update Location area Update
- a non-broadcast LAI (Location Area) may also be included. Identifier, location area identifier). That is, the MSC/VLR sends the information of the dedicated second core network device that serves the UE to the UE in the update accept message, which may be: the MSC/VLR will use the TMSI and the The non-broadcast LAI is included in the update accept message sent to the UE.
- an embodiment of the present invention provides a core network device, where the core network device may include a receiving module 601 and an operation module 602.
- the core network device and the first core network device in the first embodiment to the third embodiment may be the same core network device.
- the receiving module 601 can be configured to receive an access request message sent by the UE.
- the information is sent to the UE in a temporary identity of the UE.
- the core network device is an MME, and the temporary identifier of the UE is, for example, a GUTI; or the core network device is an SGSN, and the temporary identifier of the UE is, for example, P-TMSI, or the core network.
- the device is an MSC/VLR, and the temporary identifier of the UE is, for example, TMSI.
- the UE is a UE configured to require a dedicated network service, or a specific type of UE, or a UE with specific subscription data.
- the specific type of UE is an MTC UE or a low priority UE.
- the specific subscription data refers to the subscription data of the specific access point APN, or the subscription includes data of the network type of the serving UE, or the subscription indicates that the UE needs data of a specific network service, or the subscription includes the serving UE.
- the data of the core network element type refers to the subscription data of the specific access point APN, or the subscription includes data of the network type of the serving UE, or the subscription indicates that the UE needs data of a specific network service, or the subscription includes the serving UE.
- the data of the core network element type refers to the subscription data of the specific access point APN, or the subscription includes data of the network type of the serving UE, or the subscription indicates that the UE needs data of a specific network service, or the subscription includes the serving UE.
- the data of the core network element type refers to the subscription data of the specific access point APN, or the subscription includes data of the network type of the serving UE, or the subscription indicates that the UE needs data of a specific network service, or the subscription includes the serving UE.
- the operation module 602 is specifically configured to: include the temporary identifier of the UE and the non-broadcast location area identifier in an access accept message, and send the temporary identifier and the period of the UE The sexual location area update timer value is sent to the UE in the access accept message.
- the operation module 602 is further configured to: send a detach request to the UE, where the detach request includes a re-attachment cause value.
- the information of the dedicated second core network device is: a group identifier of the dedicated second core network device, or a code of the dedicated second core network device, or the dedicated second core NRI of the network device.
- the embodiment of the present invention provides a core network device 700, which may be the same device as the core network device in the fourth embodiment and the first core network device in the first embodiment to the third embodiment.
- the device 700 includes: a bus 740; and a processor 710, a memory 720, and an interface 730 connected to the bus 740, where the interface 730 is configured to receive an access request message sent by the UE, and to the UE a temporary identifier is sent to the UE; the memory 720 is configured to store an instruction, and the processor 710 executes the instruction to include information of a dedicated second core network device serving a private network of the UE in the UE In the temporary identification.
- the core network device is an MME, and the temporary identifier of the UE is, for example, a GUTI; or the core network device is an SGSN, and the temporary identifier of the UE is, for example, a P-TMSI.
- the core network device is an MSC/VLR, and the temporary identifier of the UE is, for example, TMSL.
- the UE is a UE configured to require a dedicated network service, or a specific type of UE, or a UE with specific subscription data.
- the specific type of UE is an MTC UE or a low priority UE.
- the specific subscription data refers to the subscription data of the specific access point APN, or the data of the network type that includes the serving UE, or the data indicating that the UE needs the specific network service. , or signing the data including the core network element type of the serving UE.
- the processor 710 is specifically configured to: execute the instruction to include the temporary identifier of the UE and the non-broadcast location area identifier in an access accept message, or execute the instruction.
- the temporary identifier of the UE and a periodic location area update timer value are included in the access accept message.
- the interface 730 is specifically configured to: send the access accept message to the UE. In the embodiment of the present invention, the interface 730 is further configured to: send a disconnect request to the UE, where the split request includes a re-attachment cause value.
- the information of the dedicated second core network device is: the group identifier of the dedicated second core network device, or the code of the dedicated second core network device, or The NRI of the dedicated second core network device.
- An embodiment of the present invention provides a network selection method, where the method may include: receiving, by a first core network device, an access request message sent by a UE; where the first core network device serving a private network in the private network of the UE The information of the second core network device is sent to the UE in the temporary identifier of the UE.
- the first core network device may include the information of the dedicated second core network device of the private network in the temporary identifier of the UE.
- the UE is sent to the UE, so that even if the first core network device is not a core network device that specifically serves the UE, the UE can have the correct core network device service when accessing the network for the next time.
- the disclosed system, apparatus, and method may be implemented in other manners.
- the device embodiments described above are merely illustrative.
- the division of the modules or units is only a logical function division.
- there may be another division manner for example, multiple units or components may be used. Combined or can be integrated into another system, or some features can be ignored, or not executed.
- the mutual coupling or direct coupling or communication connection shown or discussed may be an indirect coupling or communication connection through some interface, device or unit, and may be in an electrical, mechanical or other form.
- the components displayed for the unit may or may not be physical units, ie may be located in one place, or may be distributed over multiple network units. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of the embodiment.
- each functional unit in each embodiment of the present application may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit.
- the above integrated unit can be implemented in the form of hardware or in the form of a software function unit.
- the integrated unit if implemented in the form of a software functional unit and sold or used as a standalone product, may be stored in a computer readable storage medium.
- the instructions include a plurality of instructions for causing a computer device (which may be a personal computer, a server, or a network device, etc.) or a processor to perform all or part of the steps of the methods described in various embodiments of the present application.
- the foregoing storage medium includes: a U disk, a removable hard disk, a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk, and the like, which can store program code. .
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Abstract
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| RU2016121432A RU2633526C1 (ru) | 2013-11-01 | 2013-11-01 | Способ выбора сети и основное сетевое устройство |
| JP2016527422A JP6420337B2 (ja) | 2013-11-01 | 2013-11-01 | ネットワーク選択方法およびコアネットワーク装置 |
| EP13896603.1A EP3065465B1 (fr) | 2013-11-01 | 2013-11-01 | Procédé de sélection de réseau et dispositif de réseau central |
| PCT/CN2013/086470 WO2015062098A1 (fr) | 2013-11-01 | 2013-11-01 | Procédé de sélection de réseau et dispositif de réseau central |
| US15/142,167 US9930611B2 (en) | 2013-11-01 | 2016-04-29 | Network selection method and core network device |
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| CN108886831A (zh) * | 2016-03-31 | 2018-11-23 | 华为技术有限公司 | 一种接入方法及装置 |
| WO2018033564A1 (fr) * | 2016-08-17 | 2018-02-22 | Telefonaktiebolaget Lm Ericsson (Publ) | Changement de dcn optimisé |
| US10772037B2 (en) | 2016-09-30 | 2020-09-08 | Ntt Docomo, Inc. | Gateway selection method and communication system |
| JPWO2018061942A1 (ja) * | 2016-09-30 | 2019-07-11 | 株式会社Nttドコモ | ゲートウェイ選択方法および通信システム |
| WO2018061942A1 (fr) * | 2016-09-30 | 2018-04-05 | 株式会社Nttドコモ | Procédé de sélection de passerelle et système de communication |
Also Published As
| Publication number | Publication date |
|---|---|
| JP2016541174A (ja) | 2016-12-28 |
| EP3065465B1 (fr) | 2018-01-10 |
| US20160249278A1 (en) | 2016-08-25 |
| US9930611B2 (en) | 2018-03-27 |
| EP3065465A4 (fr) | 2016-10-26 |
| RU2633526C1 (ru) | 2017-10-13 |
| JP6420337B2 (ja) | 2018-11-07 |
| CN104871600A (zh) | 2015-08-26 |
| CN104871600B (zh) | 2019-06-07 |
| EP3065465A1 (fr) | 2016-09-07 |
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